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Risk Criteria for Quantitative Risk AssessmentBy John Meuth, Brandon Fryman, P. E. Hoffman, Joshua Ph. D., P. E. Calnan, Josh Ph. D.
Quantitative Risk Assessment (QRA) can be specifically tailored for use by the commercial explosives industry to calculate risk to employees and the public from commercial explosives facilities and op
Jan 1, 2019
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Blast Assessment Through Shovel Performance MonitoringBy Carl Hendricks, Malcolm Scoble
There currently exists no viable means of obtaining continuous, quantified feedback on blast efficiency. This paper describes the adaptation of a loading shovel to serve as a diagnostic tool in evalua
Jan 1, 1991
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Journal: 100 Years / THE ENGINEERING AND MINING JOURNAL New York July 27, 1907 / Shot-firers, and Evils of Solid ShootingBy George Harrison
A great many labor leaders and others advocate shot-firers as the acme of relief for all the dangers connected with solid shooting, and where large quantities of powder are used in one blast in coal m
Jan 1, 2008
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A Classic Experiment with Air Overpressure and WindowsBy Charlie Adcock, Rob Farnfield, Andy Wetherelt
The ISEE Blasters Handbook gives guidance on the level of air overpressure likely to cause occasional window breakage (151dB) and general window breakage (171dB). A long-term safe level of 140dB is al
Jan 1, 2006
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Ground Motions from and House Response to Underground Aggregate MiningBy Professor of Civil and Environmental Engineering Northwestern University, Mike Wladron, Gordon Revey
A unique judicial opportunity allowed measurement of the response of three cracks in residential structure to blasting for underground aggregate mining. Instrumented cracks were located in the interio
Jan 1, 2007
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Tunnel Excavation on the Abutment of an Existing DamTo meet the energy requirements, hydroelectric projects are planned and executed in many countries. Though these projects requires a high capital investment, the returns are regular with minimum maint
Jan 1, 2016
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Portable Continuous Velocity of Detonation SystemsBy Jackson R. Pressley, M L. Hopkins, R E. Danell, N T. Moxon, Andrew Bowman
Efficient and cost effective blasting is achieved by closely matching the explosive energy to the strength of the material in which it is being used. Although there are many empirical relationships wi
Jan 1, 1991
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Diagnosing and Modifying Off-Site Blast Effects by Seismic Means - A Case StudyBy Stuart Brashear, Robert Brush, Ben Cook
In early 1993, the Piney River quarry owned and operated by the Blue Ridge Stone Corporation of W W? Boxley received a series of complaints from the owners of a 130 year-old historic farmhouse that ha
Jan 1, 1996
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Blasting to Reduce Ore Dilution - Are You Kidding?By Brad Bulow
Blasting is an essentially violent process aimed to disrupt and loosen rock for productive excavation. Some dilution of any ore present is the inevitable result. This makes blasting a dirty word to mo
Jan 1, 2000
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Fluvial Geomorphology-Stream Relocation for the Mining IndustryBy Gerald W. Longenecker
For decades, traditional hydraulic engineering approaches have been used for sizing stream channels when stream relocation efforts have been necessary to allow for the advancement of quarry and other
Jan 1, 1998
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Usability of Expert System Integrated With GIS in Blasting OperationsBy U. Gorkhan Akkaya, N. Enver
Geographic information system (GIS) is one of the most accurate and useful tools to help decision – making for decision-makers. As to expert systems, it provides solutions to the problems faced by mim
Jan 1, 2013
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Explosive Energy In Blast Design OptimizationBy Deepak Vidyarthi
This paper deals with the significance of Explosive Energy in the optimization of blast design parameters, and the benefits emerging out of it. It is based on the original work done by the author in d
Jan 1, 2006
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Florida Mining Blast Vibration Study Part 2: Current Regulations in FloridaBy Tristan Worsey, Nathan Rouse
The Florida legislature allocated funding for the Florida State Fire Marshal (FSFM) to review the applicability of the United States Bureau of Mines (USBM) Report of Investigations (RI) 8507 blast vib
Jan 1, 2019
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Cast Blasting in the Light of the Electronic OptionBy Winfried Rosenstock
The development of electronic initiation systems has partially reached or will reach in a short period of time full reliability for general use without limitations. Unfortunately those systems meet wi
Jan 1, 2003
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Non-Electric Shock Tube Initiation Systems Applications and HookupsBy John Watson, Tom Treleaven
This guide presents nur-nerous patterns that provide 8 millisecond separations between initiated charges. The guide is tabulated in seven sections to provide Quick reference by number of decks or bunc
Jan 1, 1995
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Masterblaster Blasting Management SystemBy Chris Uys, Johan Labuschagne
Sishen Iron Ore Mine, located in the Northern Cape, is an open cast mine excavating approximately 100 million tons rock to produce 25 million tons of high grade haematite ore per annum. The size of th
Jan 1, 1997
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Experience with and benefits from the use of 3D Stereophotogrammetry for blast design and controlBy Peter Moser, Mark Ganster, Andreas Gaich
Surveying of a bench face before blasting is a pre-requisite for a proper blast planning and for a satisfying blasting result both in terms of safety and fragmentation. When surveying a bench face, pr
Jan 1, 2007
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Analysis of Rock Fragmentation by Blasting Using Combined CFD/FEZ/DEM ModelsBy Alejandro Ferrada Vergara, Héctor Espinoza Muñoz
Drilling and blasting stages are considered factors that impact downstream processes significantly and over all the mining business value chain. Adequate control of these processes may represent energ
Jan 1, 2016
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Blasting for Avalanche Control Above Snoqualmie Pass and Chinook Pass in Washington StateBy Craig Wilbour, John Stimberis, Rob Gibson, Lee Redden
An avalanche is a snow slide. A simple explanation is that the snow on a slope will slide (avalanche) when the snow strength can no longer support its own weight. Snow avalanches happen when the load
Jan 1, 2004
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Investigations of Shock Tunnel Dynamics and Energy Realization (a197a97d-a574-4dd6-b892-bc2dba4e791b)By Joshua Hoffman, Braden Lusk, Kyle Perry
This study explores how different geometries affect the shock tunnel’s performance and is broken down into three phases. Phase 1: Open arena testing in which theoretical energies produced by the deton
Jan 1, 2009